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1.
J Neuroinflammation ; 21(1): 194, 2024 Aug 03.
Article in English | MEDLINE | ID: mdl-39097742

ABSTRACT

Chronic neuroinflammation and microglial activation are key mediators of the secondary injury cascades and cognitive impairment that follow exposure to repetitive mild traumatic brain injury (r-mTBI). Peroxisome proliferator-activated receptor-γ (PPARγ) is expressed on microglia and brain resident myeloid cell types and their signaling plays a major anti-inflammatory role in modulating microglial responses. At chronic timepoints following injury, constitutive PPARγ signaling is thought to be dysregulated, thus releasing the inhibitory brakes on chronically activated microglia. Increasing evidence suggests that thiazolidinediones (TZDs), a class of compounds approved from the treatment of diabetes mellitus, effectively reduce neuroinflammation and chronic microglial activation by activating the peroxisome proliferator-activated receptor-γ (PPARγ). The present study used a closed-head r-mTBI model to investigate the influence of the TZD Pioglitazone on cognitive function and neuroinflammation in the aftermath of r-mTBI exposure. We revealed that Pioglitazone treatment attenuated spatial learning and memory impairments at 6 months post-injury and reduced the expression of reactive microglia and astrocyte markers in the cortex, hippocampus, and corpus callosum. We then examined whether Pioglitazone treatment altered inflammatory signaling mechanisms in isolated microglia and confirmed downregulation of proinflammatory transcription factors and cytokine levels. To further investigate microglial-specific mechanisms underlying PPARγ-mediated neuroprotection, we generated a novel tamoxifen-inducible microglial-specific PPARγ overexpression mouse line and examined its influence on microglial phenotype following injury. Using RNA sequencing, we revealed that PPARγ overexpression ameliorates microglial activation, promotes the activation of pathways associated with wound healing and tissue repair (such as: IL10, IL4 and NGF pathways), and inhibits the adoption of a disease-associated microglia-like (DAM-like) phenotype. This study provides insight into the role of PPARγ as a critical regulator of the neuroinflammatory cascade that follows r-mTBI in mice and demonstrates that the use of PPARγ agonists such as Pioglitazone and newer generation TZDs hold strong therapeutic potential to prevent the chronic neurodegenerative sequelae of r-mTBI.


Subject(s)
Cognitive Dysfunction , Microglia , PPAR gamma , Pioglitazone , Animals , Male , Mice , Brain Concussion/metabolism , Brain Concussion/drug therapy , Cognitive Dysfunction/metabolism , Cognitive Dysfunction/drug therapy , Mice, Inbred C57BL , Microglia/drug effects , Microglia/metabolism , Pioglitazone/pharmacology , Pioglitazone/therapeutic use , PPAR gamma/metabolism
3.
J Neuroinflammation ; 21(1): 130, 2024 May 15.
Article in English | MEDLINE | ID: mdl-38750510

ABSTRACT

Epidemiological studies have unveiled a robust link between exposure to repetitive mild traumatic brain injury (r-mTBI) and elevated susceptibility to develop neurodegenerative disorders, notably chronic traumatic encephalopathy (CTE). The pathogenic lesion in CTE cases is characterized by the accumulation of hyperphosphorylated tau in neurons around small cerebral blood vessels which can be accompanied by astrocytes that contain phosphorylated tau, the latter termed tau astrogliopathy. However, the contribution of tau astrogliopathy to the pathobiology and functional consequences of r-mTBI/CTE or whether it is merely a consequence of aging remains unclear. We addressed these pivotal questions by utilizing a mouse model harboring tau-bearing astrocytes, GFAPP301L mice, subjected to our r-mTBI paradigm. Despite the fact that r-mTBI did not exacerbate tau astrogliopathy or general tauopathy, it increased phosphorylated tau in the area underneath the impact site. Additionally, gene ontology analysis of tau-bearing astrocytes following r-mTBI revealed profound alterations in key biological processes including immunological and mitochondrial bioenergetics. Moreover, gene array analysis of microdissected astrocytes accrued from stage IV CTE human brains revealed an immunosuppressed astroglial phenotype similar to tau-bearing astrocytes in the GFAPP301L model. Additionally, hippocampal reduction of proteins involved in water transport (AQP4) and glutamate homeostasis (GLT1) was found in the mouse model of tau astrogliopathy. Collectively, these findings reveal the importance of understanding tau astrogliopathy and its role in astroglial pathobiology under normal circumstances and following r-mTBI. The identified mechanisms using this GFAPP301L model may suggest targets for therapeutic interventions in r-mTBI pathogenesis in the context of CTE.


Subject(s)
Aquaporin 4 , Astrocytes , Excitatory Amino Acid Transporter 2 , Mice, Transgenic , Tauopathies , tau Proteins , Animals , Humans , Male , Mice , Aquaporin 4/metabolism , Aquaporin 4/genetics , Astrocytes/metabolism , Astrocytes/pathology , Brain Concussion/metabolism , Brain Concussion/pathology , Excitatory Amino Acid Transporter 2/metabolism , Excitatory Amino Acid Transporter 2/genetics , Excitatory Amino Acid Transporter 2/biosynthesis , Mice, Inbred C57BL , Phenotype , tau Proteins/metabolism , tau Proteins/genetics , Tauopathies/metabolism , Tauopathies/pathology , Tauopathies/genetics
4.
Exp Neurol ; 374: 114702, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38301863

ABSTRACT

Repetitive mild traumatic brain injuries (r-mTBI) sustained in the military or contact sports have been associated with the accumulation of extracellular tau in the brain, which may contribute to the pathogenesis of neurodegenerative tauopathies. The expression of the apolipoprotein E4 (apoE4) isoform has been associated with higher levels of tau in the brain, and worse clinical outcomes after r-mTBI, though the influence of apoE genotype on extracellular tau dynamics in the brain is poorly understood. We recently demonstrated that extracellular tau can be eliminated across blood-brain barrier (BBB), which is progressively impaired following r-mTBI. The current studies investigated the influence of repetitive mild TBI (r-mTBI) and apoE genotype on the elimination of extracellular solutes from the brain. Following intracortical injection of biotin-labeled tau into humanized apoE-Tr mice, the levels of exogenous tau residing in the brain of apoE4 mice were elevated compared to other isoforms, indicating reduced tau elimination. Additionally, we found exposure to r-mTBI increased tau residence in apoE2 mice, similar to our observations in E2FAD animals. Each of these findings may be the result of diminished tau efflux via LRP1 at the BBB, as LRP1 inhibition significantly reduced tau uptake in endothelial cells and decreased tau transit across an in vitro model of the BBB (basolateral-to-apical). Notably, we showed that injury and apoE status, (particularly apoE4) resulted in chronic alterations in BBB integrity, pericyte coverage, and AQP4 polarization. These aberrations coincided with an atypical reactive astrocytic gene signature indicative of diminished CSF-ISF exchange. Our work found that CSF movement was reduced in the chronic phase following r-mTBI (>18 months post injury) across all apoE genotypes. In summary, we show that apoE genotype strongly influences cerebrovascular homeostasis, which can lead to age-dependent deficiencies in the elimination of toxic proteins from the brain, like tau, particularly in the aftermath of head trauma.


Subject(s)
Apolipoprotein E4 , Brain Concussion , Mice , Animals , Apolipoprotein E4/genetics , Apolipoprotein E4/metabolism , Mice, Transgenic , Endothelial Cells/metabolism , Brain/metabolism , Apolipoproteins E/genetics , Apolipoproteins E/metabolism , Brain Concussion/metabolism
6.
J Invest Dermatol ; 2023 Nov 14.
Article in English | MEDLINE | ID: mdl-37972725

ABSTRACT

Cardiovascular guidelines recommend early screening and preventative treatment for children with chronic inflammatory diseases. Atopic dermatitis (AD) is associated with cardiovascular risk in adults, but data in children are limited. We systematically searched for studies that examined the association between childhood AD and cardiovascular risk factors and outcomes. Data from 10 publications, including 577,148 individuals, revealed an association between AD and ischemic heart disease (n = 3, OR = 1.68, 95% confidence interval [CI] = 1.29-2.19) and diabetes (n = 4, OR = 1.31, 95% CI = 1.12-1.53), but this did not persist among studies that adjusted for potential confounders (n = 2, OR = 0.98, 95% CI = 0.35-2.75). Similarly, there was an association with lipid disorders but not across the entire population distribution (n = 7, OR = 1.24, 95% CI = 1.13-1.36, 95% prediction interval = 0.95-1.61). AD was not associated with hypertension (n = 5, OR = 1.15, 95% CI = 0.98-1.34, 95% prediction interval = 0.81-1.62) or stroke (n = 2, OR = 1.24, 95% CI = 0.94-1.62). Studies lacked detail on AD severity and important confounders such as body mass index, and the certainty of evidence was very low to low on the basis of GRADE (Grading of Recommendations, Assessment, Development and Evaluation) assessments. Currently, data do not support a clinically meaningful increase in cardiovascular risk for children with AD.

8.
Mol Cell Neurosci ; 125: 103855, 2023 06.
Article in English | MEDLINE | ID: mdl-37084991

ABSTRACT

Traumatic brain injury is a leading cause of morbidity and mortality in adults and children in developed nations. Following the primary injury, microglia, the resident innate immune cells of the CNS, initiate several inflammatory signaling cascades and pathophysiological responses that may persist chronically; chronic neuroinflammation following TBI has been closely linked to the development of neurodegeneration and neurological dysfunction. Phosphoinositide 3-kinases (PI3Ks) are a family of lipid kinases that have been shown to regulate several key mechanisms in the inflammatory response to TBI. Increasing evidence has shown that the modulation of the PI3K/AKT signaling pathway has the potential to influence the cellular response to inflammatory stimuli. However, directly targeting PI3K signaling poses several challenges due to its regulatory role in several cell survival pathways. We have previously identified that the phosphatase and tensin homolog deleted on chromosome 10 (PTEN), the major negative regulator of PI3K/AKT signaling, is dysregulated following exposure to repetitive mild traumatic brain injury (r-mTBI). Moreover, this dysregulated PI3K/AKT signaling was correlated with chronic microglial-mediated neuroinflammation. Therefore, we interrogated microglial-specific PTEN as a therapeutic target in TBI by generating a microglial-specific, Tamoxifen inducible conditional PTEN knockout model using a CX3CR1 Cre recombinase mouse line PTENfl/fl/CX3CR1+/CreERT2 (mcg-PTENcKO), and exposed them to our 20-hit r-mTBI paradigm. Animals were treated with tamoxifen at 76 days post-last injury, and the effects of microglia PTEN deletion on immune-inflammatory responses were assessed at 90-days post last injury. We observed that the deletion of microglial PTEN ameliorated the proinflammatory response to repetitive brain trauma, not only reducing chronic microglial activation and proinflammatory cytokine production but also rescuing TBI-induced reactive astrogliosis, demonstrating that these effects extended beyond microglia alone. Additionally, we observed that the pharmacological inhibition of PTEN with BpV(HOpic) ameliorated the LPS-induced activation of microglial NFκB signaling in vitro. Together, these data provide support for the role of PTEN as a regulator of chronic neuroinflammation following repetitive mild TBI.


Subject(s)
Brain Injuries, Traumatic , Microglia , Animals , Mice , Brain Injuries, Traumatic/metabolism , Disease Models, Animal , Inflammation/metabolism , Mice, Inbred C57BL , Microglia/metabolism , Neuroinflammatory Diseases , Phosphatidylinositol 3-Kinases/metabolism , Proto-Oncogene Proteins c-akt/metabolism
10.
Polit Behav ; : 1-20, 2022 Jan 18.
Article in English | MEDLINE | ID: mdl-35068636

ABSTRACT

We study the causal relationship between social and political trust in a low trust society, a setting where this topic has received very little attention. We focus on contemporary Chile, a relatively consolidated new democracy lacking many of the conditions that fosters trust such as high socioeconomic equality, weak social divisions, or universal welfare policies. Our empirical analysis is based on a 4-wave panel survey applied to a representative sample of 2000 Chilean adults interviewed face to face each year between 2016 and 2019. Based on statistical models with varying specifications and assumptions, we find support for the institutionalist view that claims that political trust exercises a positive influence over social trust. However, contrary to recent findings for some European democracies (Sønderskov & Dinesen 2016, Seifert 2018), we also find that social trust positively affects political trust. Our results suggest that the positive relationship between both types of trust travels to different political settings, and that there is no minimum threshold required in levels of trust for this relationship to emerge.

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